Understanding the transient large amplitude oscillatory shear behavior of yield stress fluids

IF 3 2区 工程技术 Q2 MECHANICS Journal of Rheology Pub Date : 2023-03-01 DOI:10.1122/8.0000583
Krutarth M. Kamani, G. Donley, R. Rao, Anne M. Grillet, C. Roberts, A. Shetty, S. Rogers
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引用次数: 11

Abstract

A full understanding of the sequence of processes exhibited by yield stress fluids under large amplitude oscillatory shearing is developed using multiple experimental and analytical approaches. A novel component rate Lissajous curve, where the rates at which strain is acquired unrecoverably and recoverably are plotted against each other, is introduced and its utility is demonstrated by application to the analytical responses of four simple viscoelastic models. Using the component rate space, yielding and unyielding are identified by changes in the way strain is acquired, from recoverably to unrecoverably and back again. The behaviors are investigated by comparing the experimental results with predictions from the elastic Bingham model that is constructed using the Oldroyd–Prager formalism and the recently proposed continuous model by Kamani, Donley, and Rogers in which yielding is enhanced by rapid acquisition of elastic strain. The physical interpretation gained from the transient large amplitude oscillatory shear (LAOS) data is compared to the results from the analytical sequence of physical processes framework and a novel time-resolved Pipkin space. The component rate figures, therefore, provide an independent test of the interpretations of the sequence of physical processes analysis that can also be applied to other LAOS analysis frameworks. Each of these methods, the component rates, the sequence of physical processes analysis, and the time-resolved Pipkin diagrams, unambigiously identifies the same material physics, showing that yield stress fluids go through a sequence of physical processes that includes elastic deformation, gradual yielding, plastic flow, and gradual unyielding.
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了解屈服应力流体的瞬态大振幅振荡剪切行为
利用多种实验和分析方法,充分了解了屈服应力流体在大振幅振荡剪切作用下所表现出的过程序列。介绍了一种新的分量率利萨朱曲线,其中应变获得不可恢复和可恢复的速率相互对应,并通过应用于四种简单粘弹性模型的分析响应证明了它的实用性。利用分量率空间,通过应变获取方式的变化来识别屈服和不屈服,从可恢复到不可恢复再返回。通过将实验结果与使用Oldroyd-Prager形式主义构建的弹性Bingham模型和Kamani, Donley和Rogers最近提出的连续模型的预测结果进行比较,研究了这些行为,其中屈服通过快速获取弹性应变而增强。将瞬态大振幅振荡剪切(LAOS)数据的物理解释与物理过程框架分析序列和新的时间分辨Pipkin空间的结果进行了比较。因此,组分率数字提供了对物理过程分析序列解释的独立检验,也可应用于其他老挝分析框架。这些方法中的每一种,组分率、物理过程分析序列和时间分辨Pipkin图,都明确地确定了相同的材料物理特性,表明屈服应力流体经历了一系列物理过程,包括弹性变形、逐渐屈服、塑性流动和逐渐不屈服。
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来源期刊
Journal of Rheology
Journal of Rheology 物理-力学
CiteScore
6.60
自引率
12.10%
发文量
100
审稿时长
1 months
期刊介绍: The Journal of Rheology, formerly the Transactions of The Society of Rheology, is published six times per year by The Society of Rheology, a member society of the American Institute of Physics, through AIP Publishing. It provides in-depth interdisciplinary coverage of theoretical and experimental issues drawn from industry and academia. The Journal of Rheology is published for professionals and students in chemistry, physics, engineering, material science, and mathematics.
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